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Indirect anodic oxidation applied for treatment of simulated wastewater containing Cationic Red X-GRL and Disperse Red 3B

机译:用于治疗含有阳离子红色X-GRL和分散红色3B的模拟废水的间接阳极氧化

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摘要

The treatment of simulated wastewater containing Cationic Red X-GRL (X-GRL) or Disperse Red 3B (DR-3B) dye was carried out by indirect anodic oxidation, using Ti/SnO2 electrodes as the anode. The influences of pH value, voltage, electrolysis time and sodium chloride dosage on the degradation performance were studied by single factor experiment. Furthermore the nitrogen states and UV-Vis spectra in dyes degradation were analyzed. The results showed that under the optimum condition (pH = 3, voltage = 20 V, NaCl = 2.5 g/L), the decolorization and chemical oxygen demand removal of X-GRL were 98% and 67%, respectively; and those of DR-3B were 51% and 61%, respectively. The azo double bond conjugated system in X-GRL is much more easily destroyed than the anthraquinone conjugated system in DR-3B; the aryl ring structures of them can be partially degraded.
机译:通过作为阳极的Ti / SnO2电极进行间接阳极氧化,通过间接阳极氧化处理含有阳离子红色X-GRL(X-GRL)或分散红色3B(DR-3B)染料的模拟废水的处理。 通过单因素实验研究了pH值,电压,电解时间和氯化钠剂量对降解性能的影响。 此外,分析了染料中的氮气状态和UV-Vis光谱。 结果表明,在最佳条件下(pH = 3,电压= 20V,NaCl = 2.5g / L),X-GRL的脱色和化学呼出量分别分别为98%和67%; DR-3B的人分别为51%和61%。 X-GRL中的AZO双键共轭系统比DR-3B中的蒽醌共轭系统更容易被破坏; 它们的芳基结构可以部分地降解。

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